The heavy ion beam probe system in the Large Helical Device (LHD) was improved as follows. At first, the additional new sweeper was installed into the diagnostic port to extend the observable region. By using this sweeper, the potential profile was measured in a wider minor radius range than in previous experiments, in the case of outward shifted magnetic configuration of LHD. Next, the real time control system was installed to control the probe beam orbit for measuring the potential in plasma with large plasma current. In this system, a digital signal processor was used to control the probe beam in real time. The system worked well in the fixed position observation mode. In the sweeping mode for profile measurement, this control system bec...
The large helical device (LHD) is the world largest helical system having all superconducting coils....
Two-dimensional potential fluctuation profiles were measured with the heavy ion beam probe (HIBP) on...
Static and dynamic behaviors of core plasma potentials in toroidal helical plasmas have been stu-die...
In order to measure the potential in Large Helical Device (LHD), we have been developing a heavy ion...
Heavy ion beam probe (HIBP) for large helical device (LHD) has been improved to measure the potentia...
Two-dimensional potential profiles in the Large Helical Device (LHD) were measured with heavy ion be...
A heavy ion beam probe (HIBP) has been installed on the Large Helical Device (LHD). A MeV-range beam...
The potential in the plasma core of the Large Helical Device (LHD) was measured with the 6 MeV Heavy...
A 6 MeV heavy ion beam probe (HIBP) is being designed for potential measurements on the Large Helica...
A 6MeV heavy ion beam probe (HIBP) is designed for potential measurements on the Large Helical Devic...
A heavy ion beam probe (HIBP) system has been installed into the Large Helical Device (LHD) to measu...
A heavy ion beam probe (HIBP) using a 3 MV tandem accelerator was installed in Large Helical Device ...
he sizes of sample volumes, which determine the spatial resolution, are estimated by trajectory calc...
In this paper we present space potential profiles directly observed in a toroidal helical plasma of ...
The Large Helical Device (LHD) is the world's largest heliotron-type device with I = 2, m = 10 conti...
The large helical device (LHD) is the world largest helical system having all superconducting coils....
Two-dimensional potential fluctuation profiles were measured with the heavy ion beam probe (HIBP) on...
Static and dynamic behaviors of core plasma potentials in toroidal helical plasmas have been stu-die...
In order to measure the potential in Large Helical Device (LHD), we have been developing a heavy ion...
Heavy ion beam probe (HIBP) for large helical device (LHD) has been improved to measure the potentia...
Two-dimensional potential profiles in the Large Helical Device (LHD) were measured with heavy ion be...
A heavy ion beam probe (HIBP) has been installed on the Large Helical Device (LHD). A MeV-range beam...
The potential in the plasma core of the Large Helical Device (LHD) was measured with the 6 MeV Heavy...
A 6 MeV heavy ion beam probe (HIBP) is being designed for potential measurements on the Large Helica...
A 6MeV heavy ion beam probe (HIBP) is designed for potential measurements on the Large Helical Devic...
A heavy ion beam probe (HIBP) system has been installed into the Large Helical Device (LHD) to measu...
A heavy ion beam probe (HIBP) using a 3 MV tandem accelerator was installed in Large Helical Device ...
he sizes of sample volumes, which determine the spatial resolution, are estimated by trajectory calc...
In this paper we present space potential profiles directly observed in a toroidal helical plasma of ...
The Large Helical Device (LHD) is the world's largest heliotron-type device with I = 2, m = 10 conti...
The large helical device (LHD) is the world largest helical system having all superconducting coils....
Two-dimensional potential fluctuation profiles were measured with the heavy ion beam probe (HIBP) on...
Static and dynamic behaviors of core plasma potentials in toroidal helical plasmas have been stu-die...